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Unraveling the mechanism of microRNA-134 in colon cancer progression: Targeting KRAS and PIK3CA for cell cycle control and histone deacetylase regulation
Medical Biotechnology lab, Faculty of Allied Health Sciences, Chettinad Hospital and Research Institute (CHRI), Chettinad Academy of Research and Education (CARE), Rajiv Gandhi Salai (OMR), Kelambakkam, Chennai, Tamil Nadu, 603 103, India.
Medical Biotechnology lab, Faculty of Allied Health Sciences, Chettinad Hospital and Research Institute (CHRI), Chettinad Academy of Research and Education (CARE), Rajiv Gandhi Salai (OMR), Kelambakkam, Chennai, Tamil Nadu, 603 103, India.
Medical Biotechnology lab, Faculty of Allied Health Sciences, Chettinad Hospital and Research Institute (CHRI), Chettinad Academy of Research and Education (CARE), Rajiv Gandhi Salai (OMR), Kelambakkam, Chennai, Tamil Nadu, 603 103, India.
Medical Biotechnology lab, Faculty of Allied Health Sciences, Chettinad Hospital and Research Institute (CHRI), Chettinad Academy of Research and Education (CARE), Rajiv Gandhi Salai (OMR), Kelambakkam, Chennai, Tamil Nadu, 603 103, India.
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2025 (English)In: Experimental Cell Research, ISSN 0014-4827, E-ISSN 1090-2422, Vol. 444, no 2, article id 114385Article in journal (Refereed) Published
Abstract [en]

Colon cancer is the leading cause of cancer-related deaths worldwide. MicroRNAs (miRNAs) are key regulators of gene expression, often dysregulated in colon cancer. This study aims to elucidate the therapeutic role of miR-134-5p as a tumor suppressor miRNA in colon cancer cells. We analyzed miRNA expression profiles in primary and metastatic colon cancer cells. The clinical significance of miR-134-5p was evaluated using the TCGA database. Bioinformatics tools (HADDOCK) predicted miRNA-mRNA interactions and the molecular docking of miRNA-mRNA-AGO2 complexes. Luciferase reporter assays, cell proliferation, immunofluorescence, colony forming unit assays, and qRT-PCR analysis assessed miR-134-5p effects on KRAS, PIK3CA, and downstream signaling pathways in primary and metastatic colon cancer cells. miR-134-5p was downregulated in colon cancer cells. Bioinformatics analysis suggested KRAS, PIK3CA, EGFR, and HDAC5 as potential targets. HADDOCK analysis revealed strong binding affinity and structural stability between KRAS, PIK3CA, miR-134-5p, and AGO2. Gene-reporter assays confirmed miR-134-5p-mediated degradation of KRAS and PIK3CA. miR-134-5p transfection reduced KRAS and PI3K protein levels, suppressed EGFR/RTK signaling and its downstream targets, and inhibited HDAC expression, ultimately reducing colon cancer cell proliferation. The results of this study confirm that miR-134-5p acts as a potential tumor suppressor miRNA in colon cancer cells by inhibiting KRAS and PI3K expression through AGO2-mediated gene silencing. It deregulates downstream EGFR signaling and HDACs, thereby reducing colon cancer cell proliferation. These findings highlight miR-134-5p as a promising therapeutic target for miRNA-mediated anticancer therapy.

Place, publisher, year, edition, pages
Academic Press, 2025. Vol. 444, no 2, article id 114385
Keywords [en]
Colon cancer, Histone deacetylases, KRAS, PI3K, miR-134-5p, miRNA-mRNA docking
National Category
Cancer and Oncology
Identifiers
URN: urn:nbn:se:oru:diva-118165DOI: 10.1016/j.yexcr.2024.114385ISI: 001398961700001PubMedID: 39746598Scopus ID: 2-s2.0-85213862688OAI: oai:DiVA.org:oru-118165DiVA, id: diva2:1925835
Available from: 2025-01-09 Created: 2025-01-09 Last updated: 2025-01-28Bibliographically approved

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